A catalytic system involving silicon tetrachloride and a chiral, Lewis basic bisphosphoramide catalyst is effective for the addition of glycolate-derived silyl ketene acetals to aldehydes. It was found that the sense of diastereoselectivity could be modulated by changing the size of the substituents on the silyl ketene acetals. In general, the trimethylsilyl ketene acetals derived from methyl glycolates with a large protecting group on the alpha-oxygen provide enantiomerically enriched alpha,beta-dihydroxy esters with high syn-diastereoselectivity, whereas the tent-butyldimethylsilyl ketene acetals derived from bulky esters of a-methoxyacetic acid provide enantiomerically enriched alpha,beta-dihydroxy esters with high anti-diastereoselecitvity.
机构:
Department of Chemistry, Organic Chemistry, Royal Institute of Technology, SE 100 44 Stockholm, SwedenDepartment of Chemistry, Organic Chemistry, Royal Institute of Technology, SE 100 44 Stockholm, Sweden
Lundgren, Stina
Wingstrand, Erica
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Department of Chemistry, Organic Chemistry, Royal Institute of Technology, SE 100 44 Stockholm, SwedenDepartment of Chemistry, Organic Chemistry, Royal Institute of Technology, SE 100 44 Stockholm, Sweden
Wingstrand, Erica
Penhoat, Mael
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Department of Chemistry, Organic Chemistry, Royal Institute of Technology, SE 100 44 Stockholm, SwedenDepartment of Chemistry, Organic Chemistry, Royal Institute of Technology, SE 100 44 Stockholm, Sweden
Penhoat, Mael
Moberg, Christina
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Department of Chemistry, Organic Chemistry, Royal Institute of Technology, SE 100 44 Stockholm, SwedenDepartment of Chemistry, Organic Chemistry, Royal Institute of Technology, SE 100 44 Stockholm, Sweden
Moberg, Christina
Journal of the American Chemical Society,
2005,
127
(33):
: 11592
-
11593